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Manipulating the extraordinary acoustic transmission through metamaterial-based acoustic band gap structures

机译:通过基于超材料的声带隙结构来控制非凡的声音传输

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摘要

We report theoretical predictions and experimental results on the formation of pass bands and stop bands of extraordinary acoustic transmission in multilayer structures based on alternating layers of acoustic metamaterial and air. The metamaterial layers can be made of any acoustically hard material perforated with a two-dimensional array of subwavelength apertures. In this way, it is possible to tailor the density and speed of sound of an otherwise acoustically bulk hard material with fixed properties. The sonic band structure allows transmission passband and stop bandgaps that depend on the layer thicknesses and effective properties of the metamaterials. In addition, we show the existence of resonant tunneling due to the formation of an acoustic passband in a spectral region of low transmission for a single layer. This opens the possibility to engineer different types of phononic materials to manipulate and control acoustic waves.
机译:我们报告了基于声学超材料和空气的交替层的多层结构中非常规声传输的通带和阻带形成的理论预测和实验结果。所述超材料层可以由任何声学上硬的材料制成,所述材料在亚波长孔的二维阵列上穿孔。以这种方式,可以调整具有固定特性的原本在声学上大块的硬质材料的声音的密度和速度。声带结构允许传输通带和阻带隙,其取决于超材料的层厚度和有效特性。另外,由于在单层低传输的频谱区域中形成了声通带,因此我们显示了共振隧穿的存在。这为设计不同类型的声子材料以操纵和控制声波提供了可能性。

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